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astropicdaily

@astropicdaily.bsky.social
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Get astro pics daily! Maintained by @yudin101.com.np

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astropicdaily @astropicdaily.bsky.social · 23h
Source: science.nasa.gov/image-article/apod…
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astropicdaily @astropicdaily.bsky.social · 23h
M104: The Sombrero Galaxy's Tidal Streams #astronomy #astrophotography #apod
A starfield has an bright blobby mess in middle. Running vertically through the very middle is a dark streak. A diagonal ring of brightness surrounds the central blob.
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astropicdaily @astropicdaily.bsky.social · 04/10/2026
Source: science.nasa.gov/image-article/apod…
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astropicdaily @astropicdaily.bsky.social · 04/10/2026
Supernumerary Rainbows over New Jersey #astronomy #astrophotography #apod
The top of a house is shown beneath a dark and cloudy sky. Many rainbow stripes are seen above the house.
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astropicdaily @astropicdaily.bsky.social · 03/10/2026
Not that this bot has a lot of followers and it misbehaving will affect people but even then, this project is something I still care about and try to actively maintain it, even though I have become very lazy and neglected it for quite some time now. Anyways, hopefully I fix this tomorrow. Bye!
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astropicdaily @astropicdaily.bsky.social · 03/10/2026
I realized this issue just now. If I had found this issue earlier, I would have fixed it as today was Saturday and I was free. Finding this past mid-night just means that I don't have the energy to work on this right now.
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astropicdaily @astropicdaily.bsky.social · 03/10/2026
I had not paid attention to the bot in a while. Didn't realize that NASA made some changes to their APOD API, which this bot relied on. Due to that reason, astropicdaily has been somewhat "malfunctioning".
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astropicdaily @astropicdaily.bsky.social · 02/10/2026
Source: apod.nasa.gov/apod/ap261002.html
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astropicdaily @astropicdaily.bsky.social · 02/10/2026
NASA Science #astronomy #astrophotography #apod
What does it take to image hundreds of nebulas? Today’s image contains the entire Sharpless Catalog of H II Regions, totaling 313 objects. Zoom in and explore! You may spot fan favorites like the Eagle (Sh2-49), Heart (Sh2-190), and Orion (Sh2-281) Nebulas. Despite its name, this catalog contains more than the glow of ionized hydrogen that makes up H II regions. There are planetary nebulas (the Medusa Nebula, Sh2-274) and supernova remnants (the Spaghetti Nebula, Sh2-240) as well. Astrophotographer Bing Xin traversed the dark skies of Eastern China and Inner Mongolia to catch them all. Narrowband filters that primarily capture light from ionized hydrogen and oxygen as well as red-green-blue filters were used. Each object took 2 to 6 hours to capture, with the entire catalog taking around 800 hours to complete! Which object is your favorite?APOD's email for image submissions has changed. Please see: APOD SubmissionsTomorrow's picture: just Curiosity
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astropicdaily @astropicdaily.bsky.social · 01/10/2026
Source: apod.nasa.gov/apod/ap261001.html
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astropicdaily @astropicdaily.bsky.social · 01/10/2026
NASA Science #astronomy #astrophotography #apod
Have you ever seen the full moon rise? This colorful image was photographed last weekend in Sicily, just outside the town of Nicosia, in Italy. It is a composite photograph that shows the Moon rising as the sky turns darker. Lower clouds are reflecting the colors of antitwilight, while ash and gas from Mount Etna are seen higher in the background. The pink band lower in the sky is called the Belt of Venus. During a full moon, the Moon and the Sun are in opposition in the sky: the moon rises as the sun sets. The lunar phase cycle lasts approximately 29.5 days (but the Moon takes approximately 27 days to orbit the Earth). In some cultures of the Northern Hemisphere, the September full moon is called the Harvest Moon. Does your culture have a special name for it? (A full moon by any other name would shine as bright.)APOD's email for image submissions has changed. Please see: APOD SubmissionsAPOD's main NASA site has moved : From apod.nasa.gov to science.nasa.gov/apodTomorrow's picture: sharpless
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astropicdaily @astropicdaily.bsky.social · 29/09/2026
Source: apod.nasa.gov/apod/ap260929.html
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astropicdaily @astropicdaily.bsky.social · 29/09/2026
Sh2-188: The Shrimp Nebula #astronomy #astrophotography #apod
What causes the swirl in the Shrimp Nebula? Its high speed is likely.  What is sure is that Sh2-188 is one of the larger planetary nebulas on the night sky, by angular size, spanning about half the diameter of the Moon.  Moreover, the white-dwarf core -- leftover from the Sun-like star that shed its outer atmosphere -- is moving unusually fast through interstellar space, creating a bow shock most visible on the upper left that is similar to a boat plowing through water.  Although faint, the  Shrimp Nebula glows also by compressing and brightening gas on its leading edge.  The featured image was taken in the light of hydrogen, sulfur, and oxygen by a backyard telescope in Krakow, Poland and then digitally adjusted to approximate the nebula's true colors.    APOD's email for image submissions has changed. Please see: APOD Submissions  APOD's main NASA site has moved: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 28/09/2026
Source: apod.nasa.gov/apod/ap260928.html
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astropicdaily @astropicdaily.bsky.social · 28/09/2026
Cosmic Latte: The Average Color of the Universe #astronomy #astrophotography #apod
What color is the universe?  More precisely, if the entire sky were smeared out, what color would the final mix be?  This whimsical question came up when trying to determine what stars are commonplace in nearby galaxies. The answer, depicted here, is a conditionally perceived shade of beige. In computer parlance: #FFF8E7.  To determine this, astronomers computationally averaged the light emitted by one of the larger samples of galaxies analyzed: the 200,000 galaxies of the 2dF Galaxy Redshift Survey.  The resulting cosmic spectrum has some emission in all parts of the electromagnetic spectrum, but a single perceived composite color.  This color has become much less blue over the past 10 billion years, indicating that redder stars are becoming more prevalent.  In a contest to better name the color, notable entries included skyvory, univeige, and the winner: cosmic latte.   APOD's email for image submissions has changed. Please see: APOD Submissions  Tomorrow: APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 27/09/2026
Source: apod.nasa.gov/apod/ap260927.html
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astropicdaily @astropicdaily.bsky.social · 27/09/2026
Andromeda before Photoshop #astronomy #astrophotography #apod
What does the Andromeda galaxy really look like? The featured image shows how our Milky Way Galaxy's closest major galactic neighbor really appears in a long exposure through Earth's busy skies and with a digital camera that introduces normal imperfections.  The picture is a stack of 223 images, each a 300 second exposure, taken from a garden observatory in Portugal during 2019.  Obvious image deficiencies include bright parallel airplane trails, long and continuous satellite trails, short cosmic ray streaks, and bad pixels.  These imperfections were actually not removed with Photoshop specifically, but rather greatly reduced with a series of computer software packages that included Astro Pixel Processor, DeepSkyStacker, and PixInsight.  All of this work was done not to deceive you with a digital fantasy that has little to do with the real likeness of the Andromeda galaxy (M31), but to minimize Earthly artifacts that have nothing to do with the distant galaxy and so better recreate what M31 really does look like.   APOD's email for image submissions has changed. Please see: APOD Submissions APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 26/09/2026
Source: apod.nasa.gov/apod/ap260926.html
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astropicdaily @astropicdaily.bsky.social · 26/09/2026
Mirrored Meteor and Milky Way #astronomy #astrophotography #apod
On August 15, this perseid meteor streaked through night skies over the Observatorio del Roque de los Muchachos at La Palma, Canary Islands, Spain. The bright and colorful meteor trail was captured next to the central Milky Way, whose dark interstellar dust clouds and luminous starlight reach above the horizon. In the foreground of this tantalizing celestial scene is the 23 meter diameter mirror of the prototype Large-Sized Telescope (LST-1). LST-1 is the first telescope constructed at the northern hemisphere site of the innovative Cherenkov Telescope Array Observatory. With 198 hexagonal mirror segments and a large, high-efficiency, pixelized camera, LST-1 is designed to detect extremely brief, atmospheric visible light flashes. Lasting about a billionth of a second, the visible light flashes are triggered by energetic gamma-rays from cosmic sources such as distant active galaxies and gamma-ray bursts. Of course, on that night some individual mirror segments of LST-1 also reflected the atmospheric flash of the bright perseid meteor.  APOD's email for image submissions has changed. Please see: APOD Submissions. APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 25/09/2026
Source: apod.nasa.gov/apod/ap260925.html
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astropicdaily @astropicdaily.bsky.social · 25/09/2026
Globular Cluster Omega Centauri #astronomy #astrophotography #apod
Globular star cluster Omega Centauri packs about 10 million stars much older than the Sun into a volume some 150 light-years in diameter. Also known as NGC 5139, at a distance of 15,000 light-years it's the largest and brightest of 200 or so known globular clusters that roam the halo of our Milky Way galaxy. Though most star clusters consist of stars with the same age and composition, the enigmatic Omega Cen exhibits the presence of different stellar populations with a spread of ages and chemical abundances. In fact, Omega Cen may be the remnant core of a small galaxy merging with the Milky Way. With a yellowish hue, Omega Centauri's red giant stars are easy to pick out in this sharp telescopic view.  A two-decade-long exploration of the dense star cluster with the Hubble Space Telescope has revealed evidence for a massive black hole near the center of Omega Centauri.  APOD's email for image submissions has changed. Please see: APOD Submissions. APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 24/09/2026
Source: apod.nasa.gov/apod/ap260924.html
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astropicdaily @astropicdaily.bsky.social · 24/09/2026
The Ghosts of Five Supernovas #astronomy #astrophotography #apod
The ghosts of five supernovas haunt this extraordinary image.   It was acquired at Oukaïmeden Observatory in Morocco with approximately 200 hours of observations and shows a large patch of the sky, equivalent to the area of one thousand full moons tiled together, in the constellation of Auriga (the charioteer).   From left to right, the five supernova remnants visible across the field are G181.1+9.5, G182.4+4.3, G179.0+2.6, G180.0−1.7 (Sh2-240, the Spaghetti Nebula), and G178.2−4.2.   They are highlighted in the annotated image, together with open cluster M37 and the Tadpole Nebula.   As each explosion expanded into space, it created a growing shell of shocked gas and delicate filamentary structures shown in red (hydrogen) and blue (oxygen), respectively.    These ancient stellar explosions happened independently; they are at various distances up to about several thousands of light-years away from Earth and have estimated ages up to tens of thousands of years old.   Early humans may have witnessed them as bright new stars, fading over weeks or months.     APOD's email for image submissions has changed. Please see: APOD Submissions.    APOD's main NASA site is moving : From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 23/09/2026
Source: apod.nasa.gov/apod/ap260923.html
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astropicdaily @astropicdaily.bsky.social · 23/09/2026
A New Lunar Crater: McGetchin #astronomy #astrophotography #apod
A once-in-a-lifetime crater has appeared on the Moon! A comet or asteroid roughly the size of a humpback whale (approximately 10-20 meters, 30-60 feet) crashed into the Moon sometime between April and May of 2024. The Lunar Reconnaissance Orbiter (LRO), with its monthly monitoring of the Moon, captured today’s images of the lunar surface before and after the event. The resulting crater, named after Apollo-era lunar scientist McGetchin, is two soccer fields across. Craters of this size are only expected once every 132 years! Follow up thermal imaging revealed a large cold spot that surrounds the warm crater. Surface impacts will puff up the loose lunar sediment, or regolith, making it less dense and harder to retain heat. This event affected an area much larger than the visible crater, which will inform humanity’s understanding of surface impacts and the evolution of the Moon’s surface. It also reminds us all to be thankful for Earth's atmosphere.   APOD's email for image submissions has changed. Please see: APOD Submissions.  APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 22/09/2026
Source: apod.nasa.gov/apod/ap260922.html
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astropicdaily @astropicdaily.bsky.social · 22/09/2026
Chance Triple Alignment: Plane, Space Station, Sun #astronomy #astrophotography #apod
This shot captured an unexpected silhouette. Which is it?  It isn't the sunspots, the small dark regions caused by concentrated magnetic fields visible around the Sun's bright disk. Sunspots typically last for weeks and were expected, since these spots were seen previously.  It isn’t the International Space Station (ISS), the small dark structure on the middle left.  This is because the featured picture was planned with sub-second timing to record the iconic structure passing before the Sun.  It is the airplane.  Just as this exposure was taking place in June, from Prasek in the Czech Republic, an airplane began its own miniature partial eclipse.  The result is this triply aligned image of our Sun.  The photographer estimates that the chance of any random Sun image containing silhouettes of both a space station and an airplane, from that location, is about 30 million to one.    APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 21/09/2026
Source: apod.nasa.gov/apod/ap260921.html
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astropicdaily @astropicdaily.bsky.social · 21/09/2026
Cocoon Nebula Wide Field #astronomy #astrophotography #apod
When does a nebula look like a comet?  In this crowded starfield covering over two degrees within the high-flying constellation of the Swan (Cygnus), the eye is drawn to the Cocoon Nebula.  A compact star forming region, the cosmic Cocoon punctuates a nebula bright in emission and reflection on the lower right, with a long trail of interstellar dust clouds to the left, making the entire complex appear a bit like a comet.  Cataloged as IC 5146, the central bright head of the nebula spans about 10 light years, while the dark dusty tail spans nearly 100 light years.  Both are located about 2,500 light years away.  A bright star near the colorful nebula's center likely supplies power and helps clear out a cavity.  The long dusty filaments of the tail, although dark in this visible light image, hide stars in the process of formation. The featured image was captured in July from Death Valley, California, USA.   APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 20/09/2026
Source: apod.nasa.gov/apod/ap260920.html
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astropicdaily @astropicdaily.bsky.social · 20/09/2026
Analemma over the Callanish Stones #astronomy #astrophotography #apod
If you went outside at the same time every day and took a picture that included the Sun, how would the Sun's position change?  A visual answer to that question is an analemma, a composite image taken from the same spot at the same time over the course of a year.  The featured analemma was composed from images taken every few days at noon near the village of Callanish in the Outer Hebrides in Scotland, UK.  In the foreground are the Callanish Stones, a stone circle built around 2700 BC during humanity's Bronze Age.  It is not known if the placement of the Callanish Stones has or had astronomical significance.  The ultimate causes for the figure-8 shape of this and all analemmas are the tilt of the Earth axis and the ellipticity of the Earth's orbit around the Sun.  At the solstices, the Sun will appear at the top or bottom of an analemma. The featured image was taken near the December solstice and so the Sun appears near the bottom.  Equinoxes, however, correspond to analemma middle points -- not the intersection point. In two days there will be an equinox ("equal night"), when day and night are equal over all of planet Earth. Many cultures celebrate a change of season at an equinox.   APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 19/09/2026
Source: apod.nasa.gov/apod/ap260919.html
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astropicdaily @astropicdaily.bsky.social · 19/09/2026
A Zodiacal Night #astronomy #astrophotography #apod
Also known as the false dawn, a luminous band of zodiacal light is captured in this dark night skyscape. The serene view was recorded just before the beginning of astronomical twilight during September's star party at the remote Hanle Dark Sky Reserve, Ladakh, India, planet Earth. At about 4,500 meters altitude, the dark sky reserve presents a haven for hardy stargazing and astrophotography enthusiasts. While meteors streak through the night, bright planet Jupiter appears immersed in the faint zodiacal glow near the eastern horizon. Follow the zodiacal band toward the zenith to find open star cluster M44 and a yellowish tinged planet Mars near the center of the frame. In fact, serendipitous detections of interplanetary dust by NASA's Juno spacecraft suggest Mars itself is the source of dust that back scatters sunlight and creates zodiacal light in planet Earth's night.  APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 19/09/2026
Source: apod.nasa.gov/apod/ap260919.html
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astropicdaily @astropicdaily.bsky.social · 19/09/2026
A Zodiacal Night #astronomy #astrophotography #apod
Also known as the false dawn, a luminous band of zodiacal light is captured in this dark night skyscape. The serene view was recorded just before the beginning of astronomical twilight during September's star party at the remote Hanle Dark Sky Reserve, Ladakh, India, planet Earth. At about 4,500 meters altitude, the dark sky reserve presents a haven for hardy stargazing and astrophotography enthusiasts. While meteors streak through the night, bright planet Jupiter appears immersed in the faint zodiacal glow near the eastern horizon. Follow the zodiacal band toward the zenith to find open star cluster M44 and a yellowish tinged planet Mars near the center of the frame. In fact, serendipitous detections of interplanetary dust by NASA's Juno spacecraft suggest Mars itself is the source of dust that back scatters sunlight and creates zodiacal light in planet Earth's night.  APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 10/09/2026
Source: apod.nasa.gov/apod/ap260910.html
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astropicdaily @astropicdaily.bsky.social · 10/09/2026
LDN 1295: The Giraffe Nebula #astronomy #astrophotography #apod
What does this image look like to you?   Many see a giraffe facing right, with neck stretched high and long legs mid-stride (but some may see a squirrel instead).   The featured image shows LDN 1295, also called the Giraffe Nebula, in the constellation of the mythical queen of Aethiopia (Cassiopeia).   It is an object in the Lynds Catalogue of Dark Nebulas, compiled in 1962 by American astronomer Beverly Lynds, a pioneer for women in astronomy and astrophysics.   Dark nebulas are interstellar clouds of dust and gas that block the visible light of the stars behind them.   These nebulas are often faint and challenging targets for astrophotographers.   Why do we see animal shapes and faces in nebulas, clouds, and pretty much everywhere?   It is due to pareidolia, our tendency to look for familiar patterns.   Pareidolia may provide animals with an evolutionary advantage, for example in identifying (and avoiding) predators.     APOD's main NASA site is moving : From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 09/09/2026
Source: apod.nasa.gov/apod/ap260909.html
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astropicdaily @astropicdaily.bsky.social · 09/09/2026
Witness XZ Andromedae Wink URL: apod.nasa.gov/apod/image/2609/xz_an… #astronomy #apod
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astropicdaily @astropicdaily.bsky.social · 08/09/2026
Source: apod.nasa.gov/apod/ap260908.html
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astropicdaily @astropicdaily.bsky.social · 08/09/2026
Hubble: Decagon Around Saturn's South Pole #astronomy #astrophotography #apod
Why are Saturn’s poles geometric? Saturn’s North Pole has been known to be surrounded by a hexagonal (6 sides) cloud since discovery in 1987 in data taken by NASA’s Voyager spacecrafts, which quickly flew past the ringed world in the early 1980s.  Now, recent observations of Saturn by the Hubble Space Telescope reveal a slightly different geometric cloud pattern around the South Pole: a decagon (10 sides).  The geometric boundaries are possibly caused by waves when the fast-moving gas away from the poles interacts with slower-moving gas closer to the poles.  In the featured image composite by the Hubble taken last year, the South Pole of Saturn is marked by an X and surrounded by bands of circulating clouds.  The decagon appears most prominent in the dark inner regions.  The northern hexagon has proven stable for over 40 years, while the stability of the southern decagon will surely remain a topic of research.   APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 07/09/2026
Source: apod.nasa.gov/apod/ap260907.html
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astropicdaily @astropicdaily.bsky.social · 07/09/2026
The Pelican Nebula in Gas, Dust, and Stars #astronomy #astrophotography #apod
The Pelican Nebula is slowly being transformed.  IC 5070 (an official designation) is divided from the larger North America Nebula by a molecular cloud filled with dark dust.  The deep featured picture from Utah, USA incorporates 25 hours of exposure and brings out great details of this filamentary dust. The Pelican Nebula receives much study because it is a particularly active mix of star formation and evolving gas clouds.  The light from young energetic stars is slowly transforming the cold gas to hot gas, with the advancing boundary between the two, known as an ionization front, visible in bright orange on the upper right. Particularly dense tentacles of cold gas remain.  Millions of years from now, the Pelican Nebula, bounded by dark nebula LDN 935, might no longer be known as the Pelican, as the balance and placement of stars and gas will surely leave something that appears completely different.   APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 06/09/2026
Source: apod.nasa.gov/apod/ap260906.html
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astropicdaily @astropicdaily.bsky.social · 06/09/2026
Pluto in Enhanced Color #astronomy #astrophotography #apod
Pluto is more colorful than we can see. Color data and high-resolution images of our Solar System's most famous dwarf planet, taken by the robotic New Horizons spacecraft during its flyby in 2015 July, have been digitally combined to give an enhanced-color view of this ancient world sporting an unexpectedly young surface. The featured enhanced color image is not only esthetically pretty but scientifically useful, making surface regions of differing chemical composition visually distinct. For example, the light-colored heart-shaped Tombaugh Regio on the lower right is clearly shown here to be divisible into two regions that are geologically different, with the leftmost lobe, Sputnik Planitia, also appearing unusually smooth. After Pluto, New Horizons continued on, shooting  past asteroid Arrokoth in 2019 with enough speed to escape our Solar System completely.
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astropicdaily @astropicdaily.bsky.social · 05/09/2026
Source: apod.nasa.gov/apod/ap260905.html
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astropicdaily @astropicdaily.bsky.social · 05/09/2026
Chasing the Moon's Shadow #astronomy #astrophotography #apod
Chasing the shadow of a New Moon, NASA’s WB-57F high altitude research aircraft took to the skies off the coast of Iceland on August 12 to observe a total solar eclipse. At 50,000 feet the aircraft was piloted along the precisely determined path of totality to maximize its time in the Moon’s shadow. A suite of high-resolution cameras on board was able to record eclipse data from above the clouds, dust, and atmospheric water vapor that interfere with observations made closer to the ground. This view from the cockpit, taken from an inflight video, captures the solar corona emerging at the beginning of totality. The sky appears dark in the shadow of the Moon. Venus is shining left of center in the video frame, while Jupiter and Mercury are just visible to the right of the eclipsed Sun. But the sky is bright along the distant horizon below, beyond the reach of the Moon's shadow.  APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 04/09/2026
Source: apod.nasa.gov/apod/ap260904.html
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astropicdaily @astropicdaily.bsky.social · 04/09/2026
Nā ʻUhane Māhoe Huki Pū i ke Ola #astronomy #astrophotography #apod
Nā ʻUhane Māhoe Huki Pū i ke Ola, is the Hawaiian name given to this image of a pair of spiral galaxies locked in a mutual gravitational embrace. Some 200 million light-years distant toward the high flying constellation Pegasus their spectacular, galactic scale merger is captured in sharp detail in the image from the 8.1 meter Gemini North telescope on Maunakea, Hawai‘i. The galaxy pair, known as NGC 7253 and Arp 278, was chosen as a target, researched, and given a Hawaiian name by high school students in the joint Gemini Observatory and University of Hawaiʻi Project Hōkūlani internship program.  The name translates to "The Twin Spirits Pulling Together Creating Life". That's both culturally and astronomically appropriate for galaxy collisions that trigger a cosmic maelstrom of star formation from galactic reservoirs of elemental building blocks of life. These merging galaxies are found within a region of Pegasus identified as the Hawaiian navigational constellation Ka Lupe o Kawelo.  APOD's main NASA site is moving: From apod.nasa.gov to science.nasa.gov/apod
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astropicdaily @astropicdaily.bsky.social · 03/09/2026
Source: apod.nasa.gov/apod/ap260903.html
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